Aliphatic polyesters are not used for fiber production, because of their low melting points. 脂肪族聚酯没有用来生产纤维,可能是熔点低的缘故。
Epoxies are sold in various formulations for different uses ( bonding or laminating, etc.), but the distinction between laminating resin and top coat resin as with polyesters does not apply. 市售的环氧树脂因用途不同,其配方也不同(粘接或层压等),但不用区别层压树脂、面漆树酯与聚酯。
Chiffon, obtained form high tenacity yarn of nylon or other polyamides or of polyesters 雪纺绸,高强力尼龙、其他聚酰胺或涤纶纱织成
Silicone polyesters resins are the reaction product of organo-siloxane intermediates and a suitable polyester resin intermediate ( typically characterized by the absence of drying oils). 硅改性聚酯树脂是有机硅氧烷和相应的聚酯树脂中间产物反应而得到的产品。
Enamel, based on polyesters, dispersed or dissolved in a nonaqueous medium 瓷漆,以聚酯为基料,分散或溶于非水介质
Excellent resistance to creep under load, and maintains the inherent chemical and electrical properties associated with polyesters. 优异的耐蠕变负荷下,保持固有的化学和电气性能与聚酯相关。
Synthetic organic polymers include many plastics, including polyethylene, the nylons, polyurethanes, polyesters, vinyls ( e.g., PVC), and synthetic rubbers. 合成的有机聚合物包括多种塑料,如聚乙烯、尼龙、聚氨酯、聚酯,乙烯基(如聚氯乙烯)和合成橡胶。
Tyre cord fabric of high tenacity yarn of nylon or other polyamides, polyesters or viscose rayon. 尼龙或其他聚酰胺、聚酯或粘胶纤维高强力纱制的帘子布。
This paper relates to the synthesis of sucrose polyesters by sucrose and fatty acid using solvent-free process. 本文旨在研究以长链脂肪酸和蔗糖为主要原料合成蔗糖多酯的工艺路线。
On biodegradation of unsaturated aliphatic polyesters 不饱和脂肪族聚酯生物降解性的研究
Development of lipase-catalyzed synthesis in terminal-functionalized polyesters 脂肪酶催化的末端官能化聚酯合成研究进展
Broad woven elastic textile fabric, of nylon or other polyamides or of polyesters Wet processing of elastic tinsel cotton leno brocade 机织宽幅弹力,尼龙、其他聚酰胺或涤纶纱织成全棉弹力嵌银丝提花纱罗织物染整工艺
Polyesters were among the first fiber-forming polycondensates to be discovered. 聚酯属于首批发现的可以制成纤维的缩聚物。
The Study on Synthesis and Biodegradation of the Aliphatic Polyesters 脂肪族聚酯的合成与生物降解性研究
This article discusses the different types, structure and functions of these polyesters engineering plastics as well as their applications. 本文集中就聚酯类工程塑料合金的品种、结构和性能关系,探讨相关的制备要点,并介绍其典型产品的应用特点。
Polyesters are condensation polymers. 聚酯是缩和聚合物。
Some biodegradable polymers such as polyesters hae already been employed as excipients in pharmacology. Water Absorbability of Excipients Commonly Used in Dispersible Tablets and Influence on Dispersible Tablets of TCM 一些生物可降解聚合物,例如聚酯,已经作为辅料应用在药理学中。分散片常用辅料吸水性对中药分散片崩解性能的影响
Biocompatibility between polyesters polylactide and stem cells from human exfoliated deciduous teeth 聚乳酸生物材料与人乳牙牙髓干细胞的生物相容性研究
Polyesters are strong, colourfast, and resistant to corrosion and chemical attack but tend to build up a static electric charge. 聚酯很坚韧、不褪色、耐腐蚀和抗化学作用,但容易积累静电。
Progress in Application of Aliphatic Hyperbranched Polyesters in Coatings 脂肪族超支化聚酯在涂料中的应用研究进展
As one type of fat substitutes, sucrose polyesters ( SPE) are growing important in food industry. 蔗糖多酯作为一种脂肪替代品,在食品工业中扮演着日益重要的角色。
All polyesters have low phase transition temperature, they have good solubilities in common organic solvents. 所有聚酯均具有较低的相转变温度,在普通的有机溶剂中具有较好的溶解性质。
Biodegradable polyesters are polymer materials, they can be synthesized by chemical methods, enzymatic-catalysis and ferment. 生物可降解聚酯是一种新型高分子聚合材料,可通过发酵、化学方法和酶催化来合成。
Study on the Biodegradability of Alkyl Xanthate Collectors On biodegradation of unsaturated aliphatic polyesters 烃基黄药类捕收剂的生物降解性研究
Progress on the biosynthesis and application of microbial polyesters 微生物聚酯的合成和应用研究进展
The thermal properties of polyesters were studied by temperature modulated DSC ( ADSC). 采用温度调制式DSC技术(简称ADSC),研究了聚酯热性能的测试方法。
Aliphatic polyesters is a kind of biodegradable polymer. 脂肪族聚酯是一种可生物降解的新型高聚物,可通过化学催化、发酵和酶催化来合成。
In this paper sucrose polyesters was synthesis by two step method from cotton seed oil and sucrose. 本文用棉籽油和蔗糖两步法成功地合成了蔗糖脂肪酸多酯,并对实验条件进行了讨论。
The article discusses the thickening mechanism of unsaturated polyesters with alkaline-earth metallic oxide. 本文研究了碱土金属氧化物对不饱和聚酯的增稠机理。
A number of biodegradable aliphatic polyesters have been developed because of their good biodegradability. 作为生物降解高分子材料,脂肪族聚酯由于其良好的生物降解性而受到人们的普遍关注。